仿生外周神经刺激促进大鼠后肢在迈步中的运动调节:实验分析

IF 10.5 Q1 ENGINEERING, BIOMEDICAL Cyborg and bionic systems (Washington, D.C.) Pub Date : 2024-07-04 eCollection Date: 2024-01-01 DOI:10.34133/cbsystems.0131
Pengcheng Xi, Qingyu Yao, Yafei Liu, Jiping He, Rongyu Tang, Yiran Lang
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引用次数: 0

摘要

对于因中风、脊髓损伤或其他疾病导致下肢运动障碍的患者来说,周围神经刺激是一种有效的神经调节方法。然而,目前大多数利用坐骨神经刺激进行康复治疗的研究仅侧重于通过刺激腓总神经和胫总神经来调节踝关节运动。在此,我们利用神经电刺激方法,通过不同的坐骨神经分支实现肌肉控制,以促进步态和站立时下肢运动的调节。我们建立了肌肉与神经节段之间的关系图,利用生物模拟刺激波形人为激活特定神经纤维。然后,建立了描述神经电刺激强度与关节控制之间关系的特征曲线。最后,通过在麻醉大鼠体内测试选定的刺激参数,我们证实单阴极硬膜外电刺激可以激活联合运动,从而促进下肢运动。因此,这种方法在改善和康复下肢运动功能障碍的治疗中是有效和可靠的。
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Biomimetic Peripheral Nerve Stimulation Promotes the Rat Hindlimb Motion Modulation in Stepping: An Experimental Analysis.

Peripheral nerve stimulation is an effective neuromodulation method in patients with lower extremity movement disorders caused by stroke, spinal cord injury, or other diseases. However, most current studies on rehabilitation using sciatic nerve stimulation focus solely on ankle motor regulation through stimulation of common peroneal and tibial nerves. Using the electrical nerve stimulation method, we here achieved muscle control via different sciatic nerve branches to facilitate the regulation of lower limb movements during stepping and standing. A map of relationships between muscles and nerve segments was established to artificially activate specific nerve fibers with the biomimetic stimulation waveform. Then, characteristic curves depicting the relationship between neural electrical stimulation intensity and joint control were established. Finally, by testing the selected stimulation parameters in anesthetized rats, we confirmed that single-cathode extraneural electrical stimulation could activate combined movements to promote lower limb movements. Thus, this method is effective and reliable for use in treatment for improving and rehabilitating lower limb motor dysfunction.

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CiteScore
7.70
自引率
0.00%
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审稿时长
21 weeks
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